CN204617149U - The cold ultra-thin Heating gloves of district's treatment of war wound - Google Patents
The cold ultra-thin Heating gloves of district's treatment of war wound Download PDFInfo
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- CN204617149U CN204617149U CN201520324056.2U CN201520324056U CN204617149U CN 204617149 U CN204617149 U CN 204617149U CN 201520324056 U CN201520324056 U CN 201520324056U CN 204617149 U CN204617149 U CN 204617149U
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- 238000010438 heat treatment Methods 0.000 title claims abstract description 67
- 229920000049 Carbon (fiber) Polymers 0.000 claims abstract description 38
- 239000004917 carbon fiber Substances 0.000 claims abstract description 38
- VNWKTOKETHGBQD-UHFFFAOYSA-N methane Chemical compound C VNWKTOKETHGBQD-UHFFFAOYSA-N 0.000 claims abstract description 31
- 208000027418 Wounds and injury Diseases 0.000 claims abstract description 25
- 206010052428 Wound Diseases 0.000 claims abstract description 17
- 239000000463 material Substances 0.000 abstract description 15
- 238000000034 method Methods 0.000 abstract description 11
- 244000043261 Hevea brasiliensis Species 0.000 abstract description 6
- 229920003052 natural elastomer Polymers 0.000 abstract description 6
- 229920001194 natural rubber Polymers 0.000 abstract description 6
- 230000033228 biological regulation Effects 0.000 abstract description 5
- 239000011159 matrix material Substances 0.000 abstract description 3
- 208000014674 injury Diseases 0.000 description 10
- 230000006378 damage Effects 0.000 description 8
- 238000013461 design Methods 0.000 description 5
- 230000000694 effects Effects 0.000 description 4
- 208000001034 Frostbite Diseases 0.000 description 3
- 238000010586 diagram Methods 0.000 description 3
- 238000005485 electric heating Methods 0.000 description 3
- 230000020169 heat generation Effects 0.000 description 2
- 239000004816 latex Substances 0.000 description 2
- 229920000126 latex Polymers 0.000 description 2
- 238000013021 overheating Methods 0.000 description 2
- 230000008733 trauma Effects 0.000 description 2
- RNFJDJUURJAICM-UHFFFAOYSA-N 2,2,4,4,6,6-hexaphenoxy-1,3,5-triaza-2$l^{5},4$l^{5},6$l^{5}-triphosphacyclohexa-1,3,5-triene Chemical compound N=1P(OC=2C=CC=CC=2)(OC=2C=CC=CC=2)=NP(OC=2C=CC=CC=2)(OC=2C=CC=CC=2)=NP=1(OC=1C=CC=CC=1)OC1=CC=CC=C1 RNFJDJUURJAICM-UHFFFAOYSA-N 0.000 description 1
- WHXSMMKQMYFTQS-UHFFFAOYSA-N Lithium Chemical compound [Li] WHXSMMKQMYFTQS-UHFFFAOYSA-N 0.000 description 1
- HBBGRARXTFLTSG-UHFFFAOYSA-N Lithium ion Chemical compound [Li+] HBBGRARXTFLTSG-UHFFFAOYSA-N 0.000 description 1
- 230000000844 anti-bacterial effect Effects 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 229920001971 elastomer Polymers 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 239000003063 flame retardant Substances 0.000 description 1
- 238000001802 infusion Methods 0.000 description 1
- 229910052744 lithium Inorganic materials 0.000 description 1
- 229910001416 lithium ion Inorganic materials 0.000 description 1
- 230000014759 maintenance of location Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000001717 pathogenic effect Effects 0.000 description 1
- 230000008092 positive effect Effects 0.000 description 1
- 238000004321 preservation Methods 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 230000035807 sensation Effects 0.000 description 1
- 238000012360 testing method Methods 0.000 description 1
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- Gloves (AREA)
Abstract
本实用新型涉及一种寒区战伤救治用超薄发热手套,包含手套套体和电源接入组件,电源接入组件包含加热碳纤维线圈,外接插线;所述的加热碳纤维线圈镶嵌在手套套体中;加热碳纤维线圈与手套套体的手背出口处相连接,并通过外接插线与外接电源连接。本实用新型采用具有导电和加热性能的碳纤维进行热量的调控,以具有贴服性材料的天然橡胶为手套套体,减少基体厚度,最大限度地保留了手指操作的准确性;在手指加热和手部设置加热不同的导热线圈排布,在保证手指的灵活性以及加热线圈在穿戴过程中不被弄断;而外部接入电源的设计,并通过无级可调速旋钮,实现加热过程的无级调速,以及热量大小的调控,提高手套在不同温度的寒区应用。
The utility model relates to an ultra-thin heating glove for the treatment of war wounds in cold regions, which comprises a glove cover body and a power supply access component. The power supply connection component includes a heating carbon fiber coil and an external plug-in wire; the heating carbon fiber coil is embedded in the glove cover In the body; the heating carbon fiber coil is connected to the outlet of the back of the hand of the glove cover body, and is connected to an external power supply through an external plug-in wire. The utility model adopts the carbon fiber with electric conduction and heating performance to control the heat, uses the natural rubber with conformable material as the glove body, reduces the thickness of the matrix, and retains the accuracy of finger operation to the greatest extent; Different heating coils are arranged on the inside to ensure the flexibility of the fingers and the heating coils will not be broken during the wearing process; while the external power supply is designed, and the infinitely adjustable speed knob realizes the infinite heating process. Step speed regulation, as well as the regulation of the amount of heat, improve the application of gloves in cold regions with different temperatures.
Description
【技术领域】【Technical field】
本实用新型涉及医疗器械领域,具体是采用具有电发热效果,且柔性的导电碳纤维材料为手套发热支撑材料,利用外接电源对碳纤维的供电,使手套本身发热,具体的说是一种寒区战伤救治用超薄发热手套。The utility model relates to the field of medical apparatus and instruments. Specifically, a flexible conductive carbon fiber material with electric heating effect is used as a heating support material for gloves, and an external power supply is used to supply power to the carbon fiber to make the glove itself generate heat. Ultra-thin heating gloves for injury treatment.
【背景技术】【Background technique】
特殊的战场环境有别于常规战场环境,其战创伤发生的特点、伤类、伤型及救治规律均有极大差别。寒区是一种较为特殊的战场环境,其常年温差大,环境恶劣,冻土、积雪、结冰多,地形复杂,致病因素多,伤情多样,环境因素如低温往往加重原有创伤,如不及时救治或救治措施不当,死亡率极高,而且伤员的后送也存在诸多不便,从而导致战斗减员或非战斗减员明显增加,在朝鲜战争中,我军因低温所致的非战斗减员高达20%。由此可见寒区的战伤救治对部队的战斗力的提升具有非常重要的意义。The special battlefield environment is different from the conventional battlefield environment, and the characteristics, injury types, injury types, and treatment rules of war trauma are very different. The cold area is a relatively special battlefield environment, with large temperature differences throughout the year, harsh environment, permafrost, snow, ice, complex terrain, many pathogenic factors, and various injuries. Environmental factors such as low temperature often aggravate the original trauma , if the treatment is not timely or the treatment measures are improper, the mortality rate will be extremely high, and there will be many inconveniences in the evacuation of the wounded, which will lead to a significant increase in combat or non-combat attrition. Reductions of up to 20%. It can be seen that the treatment of war injuries in cold regions is of great significance to the improvement of the combat effectiveness of troops.
寒区战伤救援过程中不仅对救援人员是一大考验,同时寒区的低温环境会大大的影响救援的过程,救援人员长期处于低温环境中出现的肢体僵化、手指灵活性变差、触感变差等各种因素都会导致在救援战伤人员的过程出现误差,因此低温环境的保暖措施显得尤为重要,尤其是手部的保暖;医疗救治过程中的手套,目前主要采用的是超薄的天然橡胶制备得到的,由于其优异的力学性能,抗菌等性能而被广泛使用,但正是因为其厚度低,因此对人体的手指保暖性差,从而影响战伤救援;目前已有各种各样的保暖以及发热手套的使用,专利电热手套(CN 201210216613.X)、医用输液辅助手套(CN201110374613.8)都开发了具有电加热的手套,其加热线圈的布置主要是沿着手指与手掌边缘,同时对于手掌部位的线圈布置采用的是与手指平行,不可避免的会存在人在穿戴过程中由于手套的弹性,而是加热线圈断裂的问题,同时由于加热线圈的布置而影响手套的厚度,影响手指灵活性。本专利寒区战伤救治用超薄发热手套,通过采用具有导电和加热性能的碳纤维进行热量的调控,以具有贴服性的天然橡胶为手套套体,减少基体厚度,最大限度地保留了手指操作的准确性;同时在手指加热和手部加热不同的导热线圈排布,在保证手指的灵活性以及加热线圈在穿戴过程中不被弄断。并采用外部接入电源的无级可调速旋钮,实现加热过程的无级调速,以及热量大小的调控,提高手套在不同温度的寒区应用。本专利应用于高寒地区战伤医疗救治具有非常好的应用前景。Rescue of combat wounded in cold area is not only a big test for rescuers, but also the low temperature environment in cold area will greatly affect the rescue process. Rescuers who have been in low temperature environment for a long time will suffer from rigid limbs, poor finger dexterity, and tactile sensation. Various factors such as poor temperature will lead to errors in the process of rescuing war-wounded personnel. Therefore, heat preservation measures in low-temperature environments are particularly important, especially for hands; gloves in the medical treatment process are currently mainly made of ultra-thin natural gloves. Made of rubber, it is widely used due to its excellent mechanical properties, antibacterial properties, etc., but because of its low thickness, it has poor warmth retention for the fingers of the human body, which affects the rescue of war wounds; The use of warm and heating gloves, patented electric heating gloves (CN 201210216613.X) and medical infusion auxiliary gloves (CN201110374613.8) have all developed gloves with electric heating, and the arrangement of the heating coils is mainly along the edges of fingers and palms. The coil arrangement on the palm is parallel to the fingers. It is inevitable that the heating coil will break due to the elasticity of the glove during the wearing process. At the same time, the arrangement of the heating coil will affect the thickness of the glove and affect the fingers. flexibility. The patented ultra-thin heating gloves for the treatment of war wounds in cold regions use carbon fibers with electrical conductivity and heating properties to regulate heat, and use natural rubber with good fit as the glove body to reduce the thickness of the matrix and retain fingers to the greatest extent. The accuracy of operation; at the same time, different heat conduction coils are arranged for finger heating and hand heating, which ensures the flexibility of fingers and the heating coil will not be broken during wearing. And the stepless adjustable speed knob with external power supply is adopted to realize the stepless speed regulation of the heating process and the control of the amount of heat, so as to improve the application of gloves in cold regions of different temperatures. This patent has a very good application prospect in the medical treatment of war wounds in alpine regions.
【发明内容】【Content of invention】
本实用新型的目的在于克服现有技术的不足,提供寒区战伤救治用超薄发热手套。通过手套材料本身采用贴服性材料,减少基体厚度,最大限度地保留了手指操作的准确性;同时采用锂电池及阻燃碳纤维供热,可在一定时间内保持手部温度,避免救护员冻伤及手指灵活性下降;食指远端电容屏兼容设计,可在寒冷条件下不摘除手套操作触摸电子屏,避免常规手套对电子设备的不兼容情况;电池采用人体自保温技术,可以保证电池在寒冷条件的正常工作,内衬连接锂离子电池,电池置于救护员衣袖内保暖,可延长寒冷条件下电池供温及工作时间,本实用新型专利不仅降低了伤员救治时间,提高救治效率和效果,同时也可保证救治过程中电子设备对救援人员的不兼容情况,应用于高寒地区战伤医疗救治具有非常好的应用前景。The purpose of the utility model is to overcome the deficiencies of the prior art and provide ultra-thin heating gloves for treating war wounds in cold regions. The glove material itself is made of conformable material, which reduces the thickness of the matrix and retains the accuracy of finger operation to the greatest extent; at the same time, it uses lithium batteries and flame-retardant carbon fiber for heating, which can maintain the temperature of the hands for a certain period of time and avoid frostbite for rescuers. And the flexibility of fingers is reduced; the capacitive screen at the far end of the index finger is compatible with the design, and the touch electronic screen can be operated without removing gloves in cold conditions, avoiding the incompatibility of conventional gloves with electronic equipment; The lining is connected to the lithium-ion battery, and the battery is placed in the sleeve of the ambulanceman to keep warm, which can prolong the heating and working time of the battery under cold conditions. The utility model patent not only reduces the treatment time of the wounded, but also improves the treatment efficiency and effect , At the same time, it can also ensure the incompatibility of electronic equipment with rescuers during the treatment process. It has a very good application prospect in the medical treatment of war injuries in alpine areas.
本实用新型的目的是通过以下技术方案来实现的:The purpose of this utility model is achieved through the following technical solutions:
一种寒区战伤救治用超薄发热手套,包含手套套体1和电源接入组件2,电源接入组件2包含加热碳纤维线圈3,外接插线4。An ultra-thin heating glove for treating war wounds in a cold region, comprising a glove body 1 and a power connection component 2, the power connection component 2 comprising a heating carbon fiber coil 3 and an external plug-in wire 4.
所述的加热碳纤维线圈镶嵌在手套套体中,与手套套体成为一个整体;加热碳纤维线圈与手套套体的手背出口处相连接,并通过外接插线与外接电源连接。The heating carbon fiber coil is embedded in the glove body and is integrated with the glove body; the heating carbon fiber coil is connected to the outlet of the back of the hand of the glove body, and is connected to an external power supply through an external plug-in wire.
所述的手套套体的厚度为0.05~0.2mm。The thickness of the glove body is 0.05-0.2mm.
所述的加热碳纤维线圈围绕手套套体的手指上下两面边源进行倒“U”型排布一圈。The heating carbon fiber coils are arranged in an inverted "U" shape around the upper and lower sides of the finger of the glove body.
所述的加热碳纤维线圈在手套套体手掌和手背成“S”型均匀排布且不少于3个循环。The heating carbon fiber coils are evenly arranged in an "S" shape on the palm and back of the glove body, and there are no less than 3 cycles.
所述的外接插线上含有可控制外接电源接入电流控制旋钮,从而实现对手套发热量的控制,所述的电流控制旋钮可以对电流进行无级可变速调节,实现发热量的不间断控制。The external plug-in cable contains a current control knob that can control the access of an external power supply to control the calorific value of the glove. The current control knob can adjust the current at a stepless variable speed to realize uninterrupted control of the calorific value .
所述的手套套体材料采用天然橡胶材料。The material of the glove body is natural rubber.
所述的加热碳纤维线圈,采用1~20dtex的碳纤维。The heating carbon fiber coil adopts carbon fiber of 1-20 dtex.
所述的手套平均发热量10~500mJ·min-1·cm-2。The average calorific value of the glove is 10-500 mJ·min -1 ·cm -2 .
采用贴服性材料制作,减少厚度,最大限度地保留了手指操作的准确性。同时碳纤维作为导热和发热材料,可在一定时间内保持手部温度,避免救护员冻伤及手指灵活性下降;食指远端电容屏兼容设计,可在寒冷条件下不摘除手套操作触摸电子屏。Made of conformable material, the thickness is reduced, and the accuracy of finger operation is preserved to the greatest extent. At the same time, carbon fiber is used as a heat-conducting and heating material, which can maintain the temperature of the hand for a certain period of time, avoiding frostbite of rescuers and reduced finger flexibility; the capacitive screen at the far end of the index finger is compatible with the design, and the touch screen can be operated without removing gloves under cold conditions.
采用手指部位上下两层加热,实现手指热量的全部发散,同时倒“U”字形排布,降低碳纤维断裂情况;而手掌和手背部位加热碳纤维成“S”形循环排布,避免了在穿戴过程中乳胶弹性而使材料断裂,并且加碳纤维成“S”形实现手部热量全面积扩散,避免局部过冷或过热情况,提高手指的灵活性。The upper and lower layers of the fingers are heated to realize all the heat of the fingers, and at the same time, they are arranged in an inverted "U" shape to reduce the breakage of carbon fibers; while the palms and backs of the hands are heated to form an "S" shape of circularly arranged carbon fibers, which avoids the wearing process. The elasticity of the medium latex makes the material break, and the carbon fiber is added to form an "S" shape to spread the heat over the entire area of the hand, avoid local overcooling or overheating, and improve the flexibility of the fingers.
与现有技术相比,本实用新型的积极效果是:Compared with prior art, the positive effect of the utility model is:
本实用新型一种寒区战伤救治用超薄发热手套采用具有导电和加热性能的碳纤维进行热量的调控,以具有贴服性材料的天然橡胶为手套套体,减少基体厚度,最大限度地保留了手指操作的准确性;同时在手指加热和手部加热不同的导热线圈排布,在保证手指的灵活性以及加热线圈在穿戴过程中不被弄断。而外部接入电源的设计,并通过无级可调速旋钮,实现加热过程的无级调速,以及热量大小的调控,提高手套在不同温度的寒区应用。本实用新型专利不仅降低了伤员救治时间,提高救治效率和效果,同时也可保证救治过程电子设备对救援人员的不兼容情况,应用于高寒地区战伤医疗救治具有非常好的应用前景。The utility model is an ultra-thin heating glove for the treatment of war wounds in cold regions, which adopts carbon fibers with conductivity and heating properties to regulate the heat, uses natural rubber with conformable materials as the glove body, reduces the thickness of the base body, and retains the heat to the greatest extent. The accuracy of finger operation is improved; at the same time, different heat conduction coils are arranged for finger heating and hand heating, so as to ensure the flexibility of fingers and the heating coil will not be broken during wearing. The design of the external power supply, and through the stepless adjustable speed knob, realize the stepless speed regulation of the heating process and the control of the amount of heat, which improves the application of gloves in cold regions of different temperatures. The utility model patent not only reduces the treatment time of the wounded, improves the efficiency and effect of treatment, but also ensures the incompatibility of electronic equipment with rescuers during the treatment process. It has a very good application prospect in the medical treatment of war injuries in alpine regions.
【附图说明】【Description of drawings】
图1为本实用新型一种寒区战伤救治用超薄发热手套的结构示意图;Fig. 1 is a structural schematic diagram of an ultra-thin heating glove for the treatment of war wounds in cold regions of the present invention;
图2为本实用新型一种寒区战伤救治用超薄发热手套加热线圈排布的结构示意图;Fig. 2 is a structural schematic diagram of the arrangement of heating coils of an ultra-thin heating glove for the treatment of war wounds in cold regions of the present invention;
图3为本实用新型一种寒区战伤救治用超薄发热手套加热线圈在套体中的排布结构示意图;Fig. 3 is a schematic diagram of the arrangement structure of the heating coils in the sleeve body of an ultra-thin heating glove for the treatment of war wounds in cold regions of the present invention;
附图中的标记:1为手套套体,2为电源接入组件3为热碳纤维线圈,4为外接插线,401为电流控制旋钮。Marks in the drawings: 1 is the glove cover, 2 is the power access component, 3 is the thermal carbon fiber coil, 4 is the external plug-in wire, and 401 is the current control knob.
【具体实施方式】【Detailed ways】
以下提供本实用新型一种寒区战伤就是用超薄发热手套的具体实施方式。A kind of war wound in cold region of the present utility model is provided below the specific embodiment that uses ultra-thin heating glove.
实施例1Example 1
请参见附图1,2,3,一种寒区战伤救治用超薄发热手套,包含手套套体1和电源接入组件2,电源接入组件2包含加热碳纤维线圈3,外接插线4。Please refer to the accompanying drawings 1, 2, 3, an ultra-thin heating glove for treating war wounds in cold regions, including a glove body 1 and a power access component 2, the power access component 2 includes a heating carbon fiber coil 3, and an external plug-in wire 4 .
所述的加热碳纤维线圈镶嵌在手套套体中,与手套套体成为一个整体;加热碳纤维线圈与手套套体的手背出口处相连接,并通过外接插线与外接电源连接。The heating carbon fiber coil is embedded in the glove body and is integrated with the glove body; the heating carbon fiber coil is connected to the outlet of the back of the hand of the glove body, and is connected to an external power supply through an external plug-in wire.
所述的手套套体的厚度为0.05~0.2mm。The thickness of the glove body is 0.05-0.2mm.
所述的加热碳纤维线圈围绕手套套体的手指上下两面边源进行倒“U”型排布一圈。The heating carbon fiber coils are arranged in an inverted "U" shape around the upper and lower sides of the finger of the glove body.
所述的加热碳纤维线圈在手套套体手掌和手背成“S”型均匀排布且不少于3个循环。The heating carbon fiber coils are evenly arranged in an "S" shape on the palm and back of the glove body, and there are no less than 3 cycles.
所述的外接插线上含有可控制外接电源接入电流控制旋钮401,从而实现对手套发热量的控制,所述的电流控制旋钮可以对电流进行无级可变速调节,实现发热量的不间断控制。The external plug-in line contains a current control knob 401 that can control the connection of an external power supply, so as to control the heat generation of the glove. The current control knob can adjust the current in a stepless variable speed to achieve uninterrupted heat generation. control.
所述的手套套体材料采用天然橡胶材料。The material of the glove body is natural rubber.
所述的加热碳纤维线圈,采用1~20dtex的碳纤维。The heating carbon fiber coil adopts carbon fiber of 1-20 dtex.
所述的手套平均发热量10~500mJ·min-1·cm-2。The average calorific value of the glove is 10-500 mJ·min -1 ·cm -2 .
采用贴服性材料制作,减少厚度,最大限度地保留了手指操作的准确性。同时碳纤维作为导热和发热材料,可在一定时间内保持手部温度,避免救护员冻伤及手指灵活性下降;食指远端电容屏兼容设计,可在寒冷条件下不摘除手套操作触摸电子屏。Made of conformable material, the thickness is reduced, and the accuracy of finger operation is preserved to the greatest extent. At the same time, carbon fiber is used as a heat-conducting and heating material, which can maintain the temperature of the hand for a certain period of time, avoiding frostbite of rescuers and reduced finger flexibility; the capacitive screen at the far end of the index finger is compatible with the design, and the touch screen can be operated without removing gloves under cold conditions.
采用手指部位上下两层加热,实现手指热量的全部发散,同时倒“U”字形排布,降低碳纤维断裂情况;而手掌和手背部位加热碳纤维成“S”形循环排布,避免了在穿戴过程中乳胶弹性而使材料断裂,并且加碳纤维成“S”形实现手部热量全面积扩散,避免局部过冷或过热情况,提高手指的灵活性。The upper and lower layers of the fingers are heated to realize all the heat of the fingers, and at the same time, they are arranged in an inverted "U" shape to reduce the breakage of carbon fibers; while the palms and backs of the hands are heated to form an "S" shape of circularly arranged carbon fibers, which avoids the wearing process. The elasticity of the medium latex makes the material break, and the carbon fiber is added to form an "S" shape to spread the heat over the entire area of the hand, avoid local overcooling or overheating, and improve the flexibility of the fingers.
本实用新型一种寒区战伤救治用超薄发热手套采用具有导电和加热性能的碳纤维进行热量的调控,以具有贴服性材料的天然橡胶为手套套体,减少基体厚度,最大限度地保留了手指操作的准确性;同时在手指加热和手部加热不同的导热线圈排布,在保证手指的灵活性以及加热线圈在穿戴过程中不被弄断。而外部接入电源的设计,并通过无级可调速旋钮,实现加热过程的无级调速,以及热量大小的调控,提高手套在不同温度的寒区应用。本实用新型专利不仅降低了伤员救治时间,提高救治效率和效果,同时也可保证救治过程电子设备对救援人员的不兼容情况,应用于高寒地区战伤医疗救治具有非常好的应用前景。The utility model is an ultra-thin heating glove for the treatment of war wounds in cold regions, which adopts carbon fibers with conductivity and heating properties to regulate the heat, uses natural rubber with conformable materials as the glove body, reduces the thickness of the base body, and retains the heat to the greatest extent. The accuracy of finger operation is improved; at the same time, different heat conduction coils are arranged for finger heating and hand heating, so as to ensure the flexibility of fingers and the heating coil will not be broken during wearing. The design of the external power supply, and through the stepless adjustable speed knob, realize the stepless speed regulation of the heating process and the control of the amount of heat, which improves the application of gloves in cold regions of different temperatures. The utility model patent not only reduces the treatment time of the wounded, improves the efficiency and effect of treatment, but also ensures the incompatibility of electronic equipment with rescuers during the treatment process. It has a very good application prospect in the medical treatment of war injuries in alpine regions.
以上所述仅是本实用新型的优选实施方式,应当指出,对于本技术领域的普通技术人员,在不脱离本实用新型构思的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本实用新型的保护范围内。The above is only a preferred embodiment of the present utility model, and it should be pointed out that for those of ordinary skill in the art, some improvements and modifications can also be made without departing from the concept of the present utility model. Should be regarded as within the protection scope of the present utility model.
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| CN116349967A (en) * | 2023-05-09 | 2023-06-30 | 安徽美博智能电器集团有限公司 | Glove with temperature regulating pipeline |
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